Exergy Analysis of Waste Energy Recovery System in Regasification Process of LNG FSRU

Seoung Hyun Han, Jae-Ho Jo, J. Kwon, Kyoungwoo Park, Byung Chul Choi
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Abstract

In this study, the exergy characteristics were analyzed, according to the mass flow rate of the propane working fluid and the pressure change in the turbine inlet, for the efficient recovery of cold energy and exhaust heat by the waste energy recovery system applied to the LNG FSRU regasification process. When the turbine inlet pressure and mass flow rate of the Primary Rankine Cycle were kept constant, the exergy efficiency and the net power increased. This occurred as the turbine inlet pressure and the mass flow rate of the working fluid increased in the Secondary Rankine Cycle, respectively, and the maximum values were confirmed. In this regard, the fluctuations in the exergy rate flowing into and out of the system and the exergy rate destroyed by pumps, evaporators, turbines, and LNG heat exchangers (condensers) were examined in detail.
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LNG FSRU再气化过程废能回收系统的火用分析
针对LNG FSRU再气化过程中应用的废能回收系统对冷能和废热的高效回收,根据丙烷工质流量和涡轮入口压力变化,分析了其火用特性。当一次朗肯循环的涡轮进口压力和质量流量一定时,火用效率和净功率均有所提高。在二次朗肯循环中,随着涡轮进口压力和工作流体质量流量的增加,这一现象得到了证实,并达到最大值。在这方面,详细检查了流入和流出系统的火用率的波动以及泵、蒸发器、涡轮机和LNG热交换器(冷凝器)破坏的火用率。
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